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Ultratrace-level radium-226 determination in seawater samples by isotope dilution inductively coupled plasma mass spectrometry

机译:同位素稀释电感耦合等离子体质谱法测定海水样品中痕量镭226

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摘要

An improved and novel sample preparation method for 226Ra determination in liquid samples by isotope dilution inductively coupled plasma sector field mass spectrometry using laboratory-prepared 228Ra tracer has been developed. The procedure involves a selective preconcentration achieved by applying laboratory-prepared MnO2 resin followed by cation exchange chromatographic separation. In order to completely eliminate possible molecular interferences, medium mass resolution (R = 4,000) combined with chemical separation was found to be a good compromise that enhanced the reliability of the method. The detection limit of 0.084 fg g?1 (3.1 mBq kg?1) achieved is comparable to that of the emanation method or alpha spectrometry and is suitable for low-level environmental measurements. The chemical recovery of the sample preparation method ranged from 72 to 94%. The proposed method enables a rapid, accurate and less labor-intensive approach to routine environmental 226Ra determination than the radioanalytical techniques conventionally applied.
机译:开发了一种改进的新颖的样品制备方法,该方法使用实验室制备的228 Ra示踪剂,通过同位素稀释电感耦合等离子体扇区质谱法测定液体样品中的226 Ra。该程序涉及通过应用实验室制备的MnO2 树脂,然后进行阳离子交换色谱分离,实现选择性的预浓缩。为了完全消除可能的分子干扰,发现中等质量分辨率(R = 4,000)与化学分离相结合是一种很好的折衷方案,可以提高方法的可靠性。达到的检出限为0.084 fg g?1 (3.1 mBq kg?1 ),与发射法或α光谱法相近,适用于低水平环境测量。样品制备方法的化学回收率为72%至94%。与常规应用的放射分析技术相比,该方法可以快速,准确,省力地进行常规环境226 Ra测定。

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